平面碳纳米管天线和以数据为中心的安全通信

I. Puchades, Panos P. Markopoulos, B. Landi, S. Lyshevski
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引用次数: 1

摘要

纳米技术的最新进展支持具有无线通信能力的远程联网传感器。制备了碳纳米管天线,并对其位移损伤剂量灵敏度为1.1\ × 10^{-14}$ dB/MeV/g的辐射进行了检测。天线的指示增益、效率、阻抗、波束宽度、辐射功率、辐射方向图影响信号强度、传输范围、误码率和吞吐量。通过安全通信启用数据屏蔽和授权访问控制,从而减少了整体漏洞。我们通过使用对称加密方案加密数据来保护和保护信息。在使用碳纳米管天线的无线通信应用中,考虑了以数据为中心的安全性和弹性。采用高级加密标准,对对称加密算法进行了实现、测试和评估。
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Planar Carbon Nanotube Antennas and Data-Centric Secure Communication
Recent advances in nanotechnology support remote networked sensors with wireless communication capabilities. Carbon nanotube antennas are fabricated and tested to detect radiation with a displacement damage dose sensitivity of $1.1\times 10^{-14}$ dB/MeV/g. The antenna directive gain, efficiency, impedance, beam width, radiation power, radiation pattern affect signal strength, transmission range, error rates and throughput. Data masking and authorized access control are enabled by secure communication which reduces the overall vulnerability. We protect and secure information by encrypting the data using symmetric encryption schemes. Data-centric security and resiliency are considered in wireless communication applications which may use the proposed carbon nanotube antennas. Using the Advanced Encryption Standard, the symmetric encryption algorithms are implemented, tested and evaluated.
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